Area of research
Biomedical Engineering · Cognitive Neuroscience
Research interest
Research interests include Advanced Sensor and Energy Harvesting Materials, Tactile and Sensory Interactions, Neuroscience and Neural Engineering, and Conducting polymers and applications.
A sensor-actuator–coupled gustatory interface chemically connecting virtual and real environments for remote tasting
Publisher Correction: A skin-integrated multimodal haptic interface for immersive tactile feedback
Remote control of muscle-driven miniature robots with battery-free wireless optoelectronics
A skin-integrated multimodal haptic interface for immersive tactile feedback
Does Feedback from Supermassive Black Holes Coevolve with the Host in Type 2 Quasars?
Highly stretchable organic electrochemical transistors with strain-resistant performance
Stretchable Sweat‐Activated Battery in Skin‐Integrated Electronics for Continuous Wireless Sweat Monitoring
Miniaturized electromechanical devices for the characterization of the biomechanics of deep tissue
Complex 3D microfluidic architectures formed by mechanically guided compressive buckling
Advanced Materials in Wireless, Implantable Electrical Stimulators that Offer Rapid Rates of Bioresorption for Peripheral Axon Regeneration
Skin-interfaced biosensors for advanced wireless physiological monitoring in neonatal and pediatric intensive-care units
Stretchable, dynamic covalent polymers for soft, long-lived bioresorbable electronic stimulators designed to facilitate neuromuscular regeneration
Wireless sensors for continuous, multimodal measurements at the skin interface with lower limb prostheses
Reliable, low-cost, fully integrated hydration sensors for monitoring and diagnosis of inflammatory skin diseases in any environment
Skin-integrated wireless haptic interfaces for virtual and augmented reality
Binodal, wireless epidermal electronic systems with in-sensor analytics for neonatal intensive care
Wireless, battery-free, fully implantable multimodal and multisite pacemakers for applications in small animal models
Battery-free, lightweight, injectable microsystem for in vivo wireless pharmacology and optogenetics
A Bioresorbable Magnetically Coupled System for Low‐Frequency Wireless Power Transfer
Relation between blood pressure and pulse wave velocity for human arteries
Fully implantable optoelectronic systems for battery-free, multimodal operation in neuroscience research
Wireless, Battery‐Free Epidermal Electronics for Continuous, Quantitative, Multimodal Thermal Characterization of Skin
Three-Dimensional Silicon Electronic Systems Fabricated by Compressive Buckling Process
Flexible Near-Field Wireless Optoelectronics as Subdermal Implants for Broad Applications in Optogenetics
Dissolution of Monocrystalline Silicon Nanomembranes and Their Use as Encapsulation Layers and Electrical Interfaces in Water-Soluble Electronics
Transferred, Ultrathin Oxide Bilayers as Biofluid Barriers for Flexible Electronic Implants
Kinetics and Chemistry of Hydrolysis of Ultrathin, Thermally Grown Layers of Silicon Oxide as Biofluid Barriers in Flexible Electronic Systems
Battery-free, stretchable optoelectronic systems for wireless optical characterization of the skin